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Strong optical coupling through superfluid Brillouin lasing

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arxiv 1907.06811 v1 pith:PH6V3GQV submitted 2019-07-16 physics.optics quant-ph

Strong optical coupling through superfluid Brillouin lasing

classification physics.optics quant-ph
keywords brillouinquantumcouplingopticalstrongsuperfluidapplicationsdemonstration
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Brillouin scattering has applications ranging from signal processing, sensing and microscopy, to quantum information and fundamental science. Most of these applications rely on the electrostrictive interaction between light and phonons. Here we show that in liquids optically-induced surface deformations can provide an alternative and far stronger interaction. This allows the demonstration of ultralow threshold Brillouin lasing and strong phonon-mediated optical coupling for the first time. This form of strong coupling is a key capability for Brillouin-reconfigurable optical switches and circuits, for photonic quantum interfaces, and to generate synthetic electromagnetic fields. While applicable to liquids quite generally, our demonstration uses superfluid helium. Configured as a Brillouin gyroscope this provides the prospect of measuring superfluid circulation with unprecedented precision, and to explore the rich physics of quantum fluid dynamics, from quantized vorticity to quantum turbulence.

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